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Denitrification in sediments as a major nitrogen sink in the Baltic Sea: an extrapolation using sediment characteristics

机译:沉积物中的反硝化作用是波罗的海的主要氮汇:利用沉积物特征进行的推断

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Rates of denitrification in sediments were measured with the isotope pairing technique at different sites in the southern and central Baltic Sea. The rates varied between 0.5 mu mol N m(-2) h(-1) in sands and 28.7 mu mol N m(-2) h-1 in muddy sediments and showed a good correlation to the organic carbon contents of the surface sediments. N-removal rates via sedimentary denitrification were estimated for the entire Baltic Sea calculating sediment specific denitrification rates and interpolating them to the whole Baltic Sea area. Another approach was carried out by using the relationship between the organic carbon content and the rate of denitrification. The N-removal by denitrification in sediments varied between 426-652 kt Na-1, which is around 48-73% of the external N inputs delivered via rivers, coastal point sources, and atmospheric deposition. Moreover, an expansion of the anoxic bottom areas was considered under the assumption of a rising oxycline from 100 to 80 m water depth. This leads to an increase of the area with anoxic conditions and an overall decrease in sedimentary denitrification by 14%. Overall, we show here that this type of data extrapolation is a powerful tool to estimate the nitrogen losses for a whole coastal sea and may be applicable to other coastal regions and enclosed seas.
机译:使用同位素配对技术在波罗的海南部和中部的不同地点测量了沉积物中的反硝化速率。速率在沙子中的0.5μmol N m(-2)h(-1)和泥泞的沉积物中28.7μmol N m(-2)h-1之间变化,并显示出与表层沉积物中有机碳含量的良好相关性。估算了整个波罗的海通过沉积物反硝化的氮去除率,计算了沉积物的具体反硝化率并将其内插到整个波罗的海地区。利用有机碳含量和反硝化速率之间的关系进行了另一种方法。沉积物中氮的反硝化作用在426-652 kt Na-1之间变化,这大约是通过河流,沿海点源和大气沉积物输送的外部氮输入的48-73%。此外,在氧化层从水深100上升到80 m的假设下,考虑了缺氧底部区域的扩展。这导致缺氧条件下的面积增加,沉积物反硝化作用总体下降14%。总的来说,我们在这里表明,这种数据外推法是估算整个沿海海域氮损失的有力工具,并且可能适用于其他沿海地区和封闭海域。

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